A film trap and gate assembly for use on a motion picture projector. The film trap includes an image aperture and a first and second trap rail assembly. The film trap further includes a stripper plate having an angled stripper blade attached to an attachment flange. The stripper blade is attached to the attachment flange at an at least one degree angle, preferably biased towards the trap body. The film gate includes a projection aperture and a first and second gate rail assembly. A film tensioning assembly is attached to the gate body, the film tensioning device having a deformable body disposing at least two tensioning rollers, and an adjustable tensioning device. When assembled, the film trap and gate assembly forms a film movement channel to guide the film past an illumination source, while reducing the contact between the film strip and the film trap and gate assembly. Consequently, the number of showing of a motion picture film is substantially increased.
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29. A film tensioning assembly for motion picture projectors, comprising:
a deformable body; at least two tensioning rollers in communication with said deformable body; a tensioning device is communication with said at least two tensioning rollers and said deformable body; and said tensioning device being a spring attached to said deformable body with a tensioning screw.
64. A film tensioning assembly for motion picture projectors, comprising:
a deformable body; at least two tensioning rollers in communication with said deformable body; a tensioning device is communication with said at least two tensioning rollers and said deformable body; and a deformable body further comprising an attachment orifice wherein said attachment orifice is used to attach said film tensioning device to a film trap or film gate, or both.
56. A film trap assembly for motion picture projectors, comprising:
a trap body having a flat surface, an image aperture formed in the flat surface, and having a first and second rail assembly disposed thereon to either side of the image aperture; a stripper plate attachable to said trap body; the stripper plate having a contiguous interface between the end of the surface of the trap body and the stripper plate; and the trap body and stripper plate being aligned in a generally vertical direction.
63. The film tensioning assembly for motion picture projectors, comprising:
a deformable body; at least two tensioning rollers in communication with said deformable body; a tensioning device is communication with said at least two tensioning rollers and said deformable body; and said film tensioning assembly further comprising a roller cradle, said roller cradle being in communication with said at least two tensioning rollers and said tensioning device, said roller cradle being positionable on said deformable body.
61. A film gate assembly for motion picture projectors, comprising:
a gate body having an image aperture formed therein and having a first and second rail assembly attached thereto; said first rail assembly comprising a first gate rail in communication with a first gate guide; said second rail assembly comprising a second gate rail in communication with a second gate guide; and a deformable body comprising an attachment orifice wherein said attachment orifice is used to attach a film tensioning device to a film trap or film gate, or both.
27. A film gate assembly for motion picture projectors, comprising:
a gate body having an image aperture formed therein and having a first and second rail assembly attached thereto; said first rail assembly comprising a first gate rail in communication with a first gate guide; said second rail assembly comprising a second gate rail in communication with a second gate guide; and a tensioning device in communication with at least two tensioning rollers and a deformable body, and said tensioning device being a spring attached to said deformable body with a tensioning screw.
62. A film gate assembly for motion picture projectors, comprising:
a gate body haying an image aperture formed therein and having a first and second rail assembly attached thereto; said first rail assembly comprising a first gate rail in communication with a first gate guide; said second rail assembly comprising a second gate rail in communication with a second gate guide; and a film tensioning assembly comprising a roller cradle said roller cradle being in communication with said at least two tensioning rollers and said tensioning device, said roller cradle being positionable on a deformable body.
23. A film gate assembly for motion picture projectors, comprising:
a gate body having an image aperture formed therein and having a first and second rail assembly attached thereto; said first rail assembly comprising a first gate rail in communication with a first gate guide; said second rail assembly comprising a second gate rail in communication with a second gate guide; and a film tensioning device attached to said gate body; the film tensioning device including: a deformable body; at least two tensioning rollers in communication with said deformable body; and, a tensioning device in communication with the at least two tensioning rollers. 58. A method of advancing motion picture film through a motion picture projector, comprising:
providing a motion picture projector; locating a motion picture film with said motion picture projector; forming a film movement channel with a film trap and a film gate; positioning said film within said film movement channel; the trap having a body with a fiat surface, an image aperture formed in the flat surface, a stripper plate attached to said trap body, said stripper plate baying a contiguous interface between the end of the surface of the trap body and the stripper plate; attaching said film to a film drive system; and moving said film through said film movement channel, wherein said film intermittently contacts said film trap, or said film gate, or both.
50. A method of advancing motion picture film through a motion picture projector, comprising:
providing a motion picture projector; locating motion picture film within said motion picture projector; forming a film movement channel with a film trap and a film gate, positioning said film within said film movement channel; setting the spacing between spaced rails of the trap and oppositely spaced rails of the gate such as not to touch each other along longitudinal directed oppositely opposed surfaces thereby to form a passage for receiving respectively opposite surface portions of the film passing between the oppositely opposed rails surfaces thereby to provide sufficient clearance for the film to traverse freely through the passages; attaching said film to a film drive system; and moving said film freely through said film movement channel, wherein said film intermittently contacts said film trap, or said film gate, or both.
46. A film trap and gate assembly for motion picture projectors, comprising:
a film trap having a first and second trap rail assembly, said first trap rail assembly comprising a first trap rail coupled to a first trap guide, and said second trap rail assembly comprising a second trap rail coupled to a second trap guide; a film gate having a first and second gate rail assembly, said first gate rail assembly comprising a first gate rail coupled to a first gate guide, and said second gate rail assembly comprising a second gate rail coupled to a second gate guide; wherein motion picture film is positioned on said film trap rail and wherein said film trap rail assembly receives said gate rail assembly; and wherein there is a spacing between the first trap rail and a first gate rail and a spacing between the second trap rail and the second gate rail such that surfaces of the oppositely directed rails do not touch whereby the portion of the film passing between the oppositely opposed rails provides sufficient clearance for the film to traverse freely through the spacings.
1. A film trap and gate assembly for motion picture projectors, comprising:
a film movement channel, said film movement channel formed from a first member and a second member, said first member comprising first and second film trap rails and said second member comprising first and second film gate rails, the first trap rail and the first gate rail being respectively oppositely directed and the second trap rail and the second gate rail being respectively oppositely directed; said film movement channel having a thickness oft and a width of w, wherein t is greater than the thickness of motion picture film and w is greater than the width of motion picture film; wherein w is greater than t; and wherein motion picture film is disposed within and freely traverses said film movement channel and the spacing between the first trap rail and first gate rail and the spacing between the second trap rail and the second gate rail is such that surfaces do not touch whereby the portion of the film passing between the oppositely opposed rails provides sufficient clearance for the film to traverse freely through the space.
49. A motion picture projector, comprising:
a light source; a film movement device capable of engaging a portion of motion picture film and moving said film past said light source; a film trap and gate assembly capable of receiving said film portion, said film trap and gate assembly comprising a film movement channel, said film movement channel formed from a first member and a second member, wherein said film movement channel has a thickness oft and a width of w, and wherein t is greater than the thickness of motion picture film and w is greater than the width of motion picture; the film trap having spaced apart first and second film trap rails and the film gate having spaced apart first and second film gate rails, the first trap rail and the first gate rail being respectively oppositely directed and the second trap rail and the second gate rail being respectively oppositely directed; the spacing between the first imp rail and first gale rail and the spacing between the second trap rail and the second gate rail being such that surfaces do not touch; and a lens system capable of projecting and image onto a projection surface.
41. The film trap and gate system motion picture projectors, comprising:
a film trap comprising a trap body having an image aperture formed therein and having a first and second rail assembly disposed thereon; a stripper plate attachable to said trap body, said stripper plate comprising an angled stripper blade in communication with an attachment flange; a film gate comprising a gate body having a projection aperture formed therein and having a first and second rail assembly disposed thereon; a film tensioning device attachable to said gate body, said film tensioning device comprising a deformable body having an attachment orifice formed therein and in communication with a roller cradle; said roller cradle in communication with four tensioning rollers and a tensioning device, said tensioning device in communication with a tensioning screw, wherein the tension applied to the roller cradle by the tensioning device is adjustable by actuating said tensioning screw; and, a film movement channel disposed between said film trap and said film gate, wherein said film trap engages said film gate thereby forming said film movement channel.
10. A film trap assembly for motion picture projectors, comprising:
a trap body having an image aperture formed therein and having a first and second rail assembly; said first rail assembly comprising a first trap rail in communication with a first trap guide; said second rail assembly comprising a second trap rail in communication with a second trap guide; a gate body having an image aperture formed therein and having a first and second rail assembly; said first rail assembly comprising a first gate rail in communication with a first gate guide; said second rail assembly comprising a second gate rail in communication with a second gate guide; the first and second film trap rail assemblies and the first and second film gate rail assemblies being arranged such that the first trap rail and the first gate rail are respectively oppositely directed and the second trap rail acid the second gate rail are respectively oppositely directed; and wherein there is a spacing between the first trap rail and a first gate rail and a spacing between the second trap rail and the second gate rail such that surfaces of the oppositely directed rails do not touch whereby the portion of the film passing between the oppositely opposed rails provides sufficient clearance for the film to traverse freely though the spacings.
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In motion picture projectors, a succession of transparent or semi-transparent still images or frames are sequentially advanced before a suitable light source, thereby projecting an image onto a projection surface. The film is moved or advanced until a frame is in alignment with the projection aperture and then held stationary for a discrete period of time during which light is passed during two discrete time periods through the aperture, film frame, and then a focusing lens, resulting in an image being projected onto a screen. This is followed by movement of the film until the next frame is in alignment with the projection aperture. The rapid sequential advancement of the individual still frames, typically on the order of 24 frames per second, produces the illusion of motion. Typically, the film disposes at least one soundtrack synchronized with the picture projection. In this regard, recent advances in analog and digital sound recording technology have been rapidly incorporated in to modern films and film projector sound systems, more commonly referred to as "sound heads".
To effectuate sequential film advancement, motion picture projectors utilize toothed drive sprockets connected to a motor driven "star wheel" to sequentially pull a length of film before the light source. Such motion picture projectors further include tensioning shoes for maintaining the filmstrip in contact with the drive sprockets. The film disposes two drive tracks which are engaged by the toothed sprockets, thereby enabling frame advancement. Motion picture filmstrips generally include at least one soundtrack positioned near the edge of the film or within at least one film drive track.
Commonly, motion picture projectors utilize a film trap and gate assembly to precisely align and position a filmstrip within an illumination plane. The film trap and gate assembly includes a pair of runners which provide controlled movement of the filmstrip past an illumination aperture. The edges of the filmstrip contact the runners, pressure bands, and tensioning shoes during operation. Consequently, over a period of time the edges of the filmstrip may become scratched or damaged due to the film remaining in constant contact with the runners, pressure bands, and tensioning shoes. Additionally, foreign materials such as dust, residues, and other impurities located on the runners, pressure bands, or tensioning shoes may be deposited on the film. The damage to the edges of the filmstrip or the foreign material deposited on the film may prevent the soundtracks from being clearly reproduced by the sound head.
Additionally, motion picture projectors are designed primarily for forward film advancement, in that the drive sprockets pull the filmstrip past an illumination aperture. On occasion, a film trap will include a sharpen device called a stripper plate located near the drive sprocket, to strip film splices when the film is moved through the projector in reverse. Pushing a flexible portion of film material past the sharpened stripper plate and past the runners, pressure bands, and tensioning shoes is often impossible. Moreover, severe damage to a filmstrip could occur should the filmstrip contact the stripper plate. As such, reversing the direction of the film, particularly while viewing, often results in damage to the film.
Thus, there is a need for a film trap and gate assembly for a motion picture projectors which reduces the amount of surface wear on the edges of the filmstrip, thereby increasing the lifetime of each film print. There is a further need for a film trap and gate assembly which enables the operator to reverse the direction of film travel without damaging the film.
The present invention solves the need for a film trap and gate assembly which reduces the damage to a filmstrip disposed therein, thereby extending the usable lifetime of the motion picture. The film trap and gate assembly disclosed herein has eliminated the need for maintaining constant contact between the film and the spring-loaded runners, pressure bands, and steel tensioning shoes thereby reducing or eliminating any damage to the filmstrip. Additionally, the present invention permits an operator to reverse the direction of film movement through the projector, while viewing or at higher speed, without damaging the film. The present invention may be utilized on a en number of film projector systems with little or no modification required.
The film trap and gate assembly of the present invention comprises a film movement channel, which defines a discreet area which the film strip may traverse. The film movement channel, which is formed by the film gate engaging the film trap, forms and orifice larger than the thickness of the film disposed therein. Similarly, the width of the film movement channel is greater than the width of the film positioned therein. Unlike prior art systems, which utilized spring-loaded pressure bands located on the film trap which remain in constant contact with the film and forcibly bias the film against the film gate, the film movement channel of the present invention permits a degree of film movement or float within the channel. As a result, damage to the film has been reduced or eliminated while the usable lifetime of the filmstrip has been increased.
In an additional embodiment, the present invention discloses a film trap comprising a trap body having image aperture formed therein, and having a first and second trap rail assembly positioned thereon. The first trap rail assembly comprises a first trap rail in communication with a first trap guide. Similarly, the second trap rail assembly comprises a second trap rail in communication with a second trap guide. The film is positioned on the first and second trap rails. The amount of lateral displacement the film is limited by the first and second trap guides. Those skilled in the art will appreciate the present invention has eliminated the need for constant pressure applied by the spring-loaded pressure bands the film, thereby decreasing or eliminating damage to the film during operation.
Additionally, the present invention discloses a film tensioning device which is attachable to a film gate. The film tensioning device comprises a deformable body having at least tensioning roller attached thereto, and a tensioning device in communication with tensioning rollers. The deformable body may further comprise a roller cradle which positions the tensioning rollers on the deformable body. Those skilled in the art will appreciate the tensioning rollers of the present invention may be comprised of non-abrasive materials, including, without limitation, elastomers, urethanes, and rubbers. In another embodiment, the tensioning device may be actuated to adjust the tensioning force applied by the tensioning rollers.
In yet another embodiment of the present invention a film trap and gate system is disclosed herein. The film trap and gate system comprises a film trap capable of engaging a film gate. The film trap comprises a trap body having an image aperture formed thereon, and a first and second rail assembly attached thereto. The film trap further disposes a stripper plate comprising an angled stripper blade in communication with an attachment flange. The stripper plate is attached to the attachment flange at an at least one degree angle, thereby enabling the movement of the film to be reversed. The film gate comprises a gate body having a projection aperture formed therein, and a first and second rail assembly attached thereto. A film tensioning device is attached to the gate body. The tensioning device comprises a deformable body having an attachment orifice formed therein, an a roller cradle attached thereto. The attachment orifice preferably forms an attachment slot thereby enabling the user to adjust the length of the film tensioning device with respect to the gate body. At least tensioning rollers are in communication with the roller cradle. A tensioning device is in communication with the roller cradle such that the tensioning force applied by the tensioning device may be adjusted by the user.
In an alternate embodiment, the present invention discloses a film gate stripper plate for use in motion picture projectors. The stripper plate comprises a stripper blade attached to an attachment flange. The stripper plate is angled, preferably towards the gate body, at least one degree. Those skilled in the art will appreciate the present invention permits the movement of the film to be reversed without the film contacting the stripper blade, thereby reducing the likelihood of damaging the film.
In another embodiment, the present invention discloses a film trap and gate calibration device comprising a first member and a second member. The first member has a thickness greater than the thickness and width larger than motion picture film. The second member has a thickness and width smaller than the thickness of motion picture film. The operator may then position the trap and gate rails to be calibrated to be slightly larger or smaller than the motion picture film disposed thereon.
The present invention discloses a method of advancing motion picture film through a motion picture projector. The advancement method comprises locating film within a film projector, using the a film trap and gate assembly to form a film movement channel within the projector, positioning the film within the film movement channel, attaching the film to a film drive system, and moving the film through the film advancing channel. Those skilled in the art will appreciate the present method results in the film intermittently contacting the film trap, film gate, or both, rather than utilizing constant pressure commonly used in prior art system.
Other objects and further features of the present invention will become apparent from the following detailed description when read in conjunction with the attached drawings.
Disclosed herein is a detailed description of various illustrated embodiments of the present invention. This description is not to be taken in a limiting sense, but is made merely for the purpose of illustrating the general principles of the invention. The overall organization of the present detailed description is for the purpose of convenience only and is not intended to limit the present invention.
Those skilled in the art will appreciate the present invention incorporating a continuous trap rail assembly and continuous gate rail assembly has eliminated the need for spring-loaded runners and pressure bands which remain in constant contact with film disposed thereon. In addition, the present invention incorporates non-abrasive tensioning rollers rather than steel tensioning shoes, which are commonly used on prior art devices. As such, damage to the film 14 caused by the constant contact between the film trap and gate assembly 24 is reduced or eliminated resulting in an increase in film print lifetime. Additionally, the present invention further comprises an angled stripper plate, which enables a user to operate a projector in reverse, either while viewing or at higher speed (in excess of 24 frames per second).
A conventional motion picture projector for use with the present invention is shown in FIG. 1. The projector 10 has a compartment 12 which receives motion picture film 14 through an opening 16. The film 14 engages a feed sprocket 18 and advances between the feed sprocket 18 and the feed roller 20. The film then engages a roller 22 and is positions the film for entering the film trap and gate assembly 24. The film trap and gate assembly 24 is comprised of a film trap 26 and a gate 28 which position the film 14 between an illumination source 30 and a projection assembly 32. The film emerges from the film trap and gate assembly 24 and engages a receiving sprocket 34. The film continues between a second feed sprocket 36 and a second roller 38, and exits the projector 10.
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The present invention further discloses a calibration device for use with the present film trap and gate assembly 24. As shown in
The present invention further discloses a method of using the film trap and gate assembly 24. As shown in
Those skilled in the art will appreciate the present invention incorporating a continuous trap rail assembly 64a and 64b, and continuous gate rail assembly 104a and 104b has eliminated the need for spring-loaded runners, pressure bands, and steel tensioning shoes which contact the film 14 disposed thereon. As such, damage to the film 14 caused by repeated contact with the film trap and gate assembly 24 is reduced or eliminated resulting in a decrease in film damage.
In closing, it is noted that specific illustrative embodiments of the invention have been disclosed hereinabove. However, it is to be understood that the invention is not limited to these specific embodiments. Accordingly, the invention is not limited to the precise embodiments described in detail hereinabove. With respect to the claims, it is applicant's intention that the claims not be interpreted in accordance with the sixth paragraph of 35 U.S.C. §112 unless the term "means" is used followed by a functional statement. Further, with respect to the claims, it should be understood that any of the claims described below may be combined for the purposes of the invention.
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May 02 2001 | QUIROZ, DONALD | DISNEY ENTERPRISES, INC | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 011826 | /0452 | |
May 15 2001 | Disney Enterprises, Inc. | (assignment on the face of the patent) | / |
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